Studies on the biosynthesis of tropane alkaloids in Datura stramonium L. transformed root cultures
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Genetics
Link
http://link.springer.com/content/pdf/10.1007/BF00197788.pdf
Reference21 articles.
1. Bey, P., Danzin, C., Jung, M. (1987) Inhibition of basic amino acid decarboxylases involved in polyamine biosynthesis. In: Inhibition of polyamine metabolism, pp. 1–31, McCann, P.P., Pegg, A.E., Sjoerdsma, A., eds. Academic Press, Orlando
2. Birecka, H., Birecki, M., Frohlich, M.W. (1987) Evidence for arginine as the endogenous precursor of necines in Heliotropium. Plant Physiol. 84, 42–46
3. Burtin, D., Martin-Tanguy, J., Paynot, M., Rossin, N. (1989) Effects of the suicide inhibitors of arginine and ornithine decarboxylase activities on organogenesis, growth, free polyamine and hydroxycinnamoyl putrescine levels in leaf expiants of Nicotiana xanthi n.c. cultivated in vitro in a medium producing callus formation. Plant Physiol. 89, 104–110
4. Hamill, J.D., Robins, R.J., Parr, A.J., Evans, P.M., Furze, J.M., Rhodes, M.J.C. (1990) Over-expressing a yeast ornithine decarboxylase gene in transgenic roots of Nicotiana rustica can lead to enhanced nicotine formation. Plant Mol. Biol. 15, 27–38
5. Hartmann, T., Sander, H., Adolph, R., Toppel, G. (1988) Metabolic links between the biosynthesis of pyrrolizidine alkaloids and polyamines in root cultures of Senecio vulgaris. Planta 175, 82–90
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